AMPD Buffer (0.2M, pH8.5) - BioReagent, Suitable for electrophoresis, 0.2M in water , CAS No.115-69-5

CAS: 115-69-5 Cat. No.: A1527911 Formule: C4H11NO2 Poids moléculaire: 105.14 Beilstein Registry Number: 635708 Numéro CE: 204-100-7
DISPONIBLE À COMMANDE
GRADE & PURITY BioReagent ? BioReagent grade — tested suitable for life-science and molecular-biology use. Use for cell culture, assays, and biochemical work needing biological compatibility. Suitable for electrophoresis ? Electrophoresis grade — low ionic/UV impurities for clean gel runs. Use in agarose/PAGE electrophoresis where impurities distort bands. 0.2M in water
Storage
Store at 2-8°C
Shipped In
Wet ice
Application
Electrophoresis, Enzyme activity assay
Size
Allemagne (EU)
USA*
Price
Qty
100ml
A1527911-100ml
Sur commande · 8–12 semaines
34,62€
Enter a quantity for the sizes you want to add.
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Why this grade

BioReagent, Suitable for electrophoresis, 0.2M in water Adapté à l'électrophorèse,BioReagent for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Store at 2-8°C Ships Wet ice Check lot-specific COA for exact specifications.

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Quality documents

SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.

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Literature proof

Cited in 0 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Vue d’ensemble

AMPD has an effective buffering range of pH 7.8–9.7 at 25°C. This product, at pH 8.5, falls within the optimal buffering range, exhibiting excellent buffer capacity and pH stability. It is suitable for the separation of polypeptides in the molecular weight range of 1,500–100,000 Da in SDS-gradient gel electrophoresis systems, can serve as a spacer medium in protein isotachophoresis, and is also applicable for alkaline phosphatase (ALP) activity assays.


Operating Procedure (For reference only):

1. Follow the specific experimental protocol as required.


Precautions:

1. Wear lab coats and disposable gloves during operation; ensure basic personal protection.

2. For research use only. Not intended for any other purposes.

3. Strictly adhere to laboratory safety protocols and select appropriate personal protective equipment (PPE) as needed based on risk assessment.

4. The buffering capacity of this product is temperature-dependent; elevated temperatures may lower the pH. Maintain constant temperature control during experiments to avoid deviations in results.

5. The manufacturer assumes no responsibility for any accidents resulting from improper use of this product.

Specifications

Spécifications et pureté
BioReagent, Suitable for electrophoresis, 0.2M in water
Stabilité et stockage
Store at 2-8℃ long term (12 months).
Conditions de stockage de stockage
Store at 2-8°C
Expédié en
Wet ice
Ce produit nécessite l'expédition en chaîne froide. Les services terrestres et autres services économiques ne sont pas disponibles.
Grade
Adapté à l'électrophorèse, BioReagent
Noms et identifiants
PH8.5
Isomères SMILES CC(CO)(CO)N
WGK Allemagne 1
RTECS TY2975000
Numéro ONU 3259
Poids moléculaire 105.14
Beilstein 635708
Reaxy-Rn 635708
Reaxys-RN_link_address https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=635708&ln=

Documentation

📋 Safety Data Sheet (SDS)

Comprehensive hazard, handling, storage, and regulatory compliance document.

Download SDS →

✅ Certificate of Analysis (COA)

Lot-specific quality data. Enter your lot number to retrieve the exact COA.

Look up COA →

📊 Datasheet

Quick-reference summary of product specifications and applications.

View datasheet →

🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Certificats (CoA, COO, BSE/TSE et tableau d'analyse)
C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:
Propriétés chimiques et physiques
Point d'ébullition (°C)151°C
Point de fusion (°C)108-110°C
FAQ et articles
Références
1. Yuanyang Xu, Yanjun Wang, Hongxiu Wei, Tiancheng Dai, Zhen Li, Jiehua Li, Feng Luo, Hong Tan.  (2023)  4D printable shape memory polyurethane with quadruple hydrogen bonding assembly.  JOURNAL OF POLYMER SCIENCE,      [PMID:] [10.1002/pol.20230537]
2. Dongxiang Chen, Yang Luo, Yan Song, Wencai Wang, Guo Liang Li.  (2023)  Healable and degradable bifunctional intrinsic polymers via integration of hierarchical hydrogen bonding groups and polycaprolactone segments.  POLYMERS FOR ADVANCED TECHNOLOGIES,  34  (8): (2463-2470).  [PMID:] [10.1002/pat.6064]
3. Lin Yu-Cai, Chen Feng, Yang Shou-Bin, Gong Shu-Yue, Luo Yu-Xiang, Wei Fang-Fang, Ding Fu-Chuan, Bai Wei-Bin, Jian Rong-Kun.  (2023)  Mechanical Strong, Highly Adhesive, Recyclable and Transparent Supramolecular Silicone Coatings with Easy Water/Oil Sliding.  CHINESE JOURNAL OF POLYMER SCIENCE,  41  (11): (1796-1804).  [PMID:] [10.1007/s10118-023-2966-7]
4. Zhang Chenyuan, Liu Zhiqiang, Zhang Zhijia, Zhou Wenjun, Wang Guojun, Zhang Songsong, Wei Hao, Wang Qiang, Ma Teng, Li Rui.  (2023)  Polyurethane-based crosslinked polymer with tunable self-healable and mechanical properties.  Materials Today Communications,      [PMID:] [10.1016/j.mtcomm.2023.105747]
5. Xiaobo Zhu, Wenru Zheng, Haichao Zhao, Liping Wang.  (2021)  Non-covalent assembly of a super-tough, highly stretchable and environmentally adaptable self-healing material inspired by nacre.  Journal of Materials Chemistry A,  (36): (20737-20747).  [PMID:] [10.1039/D1TA05483J]
6. Mengjie Cui, Jing Li, Dianbin Qin, Jiakuan Sun, Yi Chen, Jun Xiang, Jun Yan, Haojun Fan.  (2020)  Intumescent flame retardant behavior of triazine group and ammonium polyphosphate in waterborne polyurethane.  POLYMER DEGRADATION AND STABILITY,      [PMID:] [10.1016/j.polymdegradstab.2020.109439]
7. Yinghu Song, Guojun Song, Jialiang Li, Xirui Yang, Zhaoji Li, Xiaoru Li.  (2024)  Asymmetric dynamic strategy for high-strength self-healing polyurethane and its superhydrophobic composite materials.  PROGRESS IN ORGANIC COATINGS,      [PMID:] [10.1016/j.porgcoat.2024.108930]
8. Hong Wang, Linman Zhang, Ziyue Su, Chaoyu Chen, Weijun Yang, Pengwu Xu, Deyu Niu, Pibo Ma, Piming Ma.  (2024)  Bio-based Polyurethane Triboelectric Nanogenerator with Superior Low-Temperature Self-Healing Performance for Unmanned Surveillance.  Nano Energy,      [PMID:] [10.1016/j.nanoen.2024.110144]
9. Susu Zhao, Lixin Sun, Yibo Liu, Chuanhui Gao, Li Ding, Ze Kan, Yuetao Liu.  (2025)  Cation-indole supramolecular interaction constructed novel silicone anti-fouling materials.  CHEMICAL ENGINEERING JOURNAL,      [PMID:] [10.1016/j.cej.2025.159423]
10. Zhang Chenyuan, Liu Zhiqiang, Zhang Zhijia, Zhou Wenjun, Zhang Songsong, Wang Guojun, Wang Qiang, Ma Teng, Wang Lin, Wei Hao.  (2024)  Enhancing the mechanical properties of self-healing polyurethane via chemical crosslinking.  JOURNAL OF APPLIED POLYMER SCIENCE,      [PMID:] [10.1002/app.56031]
11. Jiahuan Wang, Yuanyang Xu, Dongfei Zhang, Wenkai Liu, Zhen Li, Jiehua Li, Feng Luo, Hong Tan.  (2025)  Multifunctional, NIR light-responsive, 4D printable polyurethane/polydopamine nanocomposite.  POLYMER,      [PMID:] [10.1016/j.polymer.2025.128214]
12. Yinghu Song, Jialiang Li, Guojun Song, Zhaoji Li, Xirui Yang, Fenglei Ma, Xiaoru Li.  (2024)  Superior strength, highly stretchable, bionic self-healing polyurethane and its composites for flexible conductivity and self-cleaning applications.  COMPOSITES PART B-ENGINEERING,      [PMID:] [10.1016/j.compositesb.2024.111457]
13. Xiaobo Zhu, Yu Hao, Liang-Feng Huang, Haichao Zhao, Liping Wang.  (2024)  Ultra-robust, highly stretchable and ambient temperature rapid self-healing polyurethane/graphene elastomers enabled by multi-type hydrogen bonds.  Journal of Materials Chemistry A,  12  (38): (26158-26169).  [PMID:] [10.1039/D4TA05090H]
14. Meng-Meng Song, Jing Li, Hao Lu, Jia-Xin Wang, Min-Feng Zeng, Xu-Wei Qi, Tao Zhou, Junhua Zhang, Bang-Jing Li, Sheng Zhang.  (2025)  Laser-Writing Multicolor Fluorescent Polyurethane for Facile Display and Potential Application in Luminescent Labeling.  ACS Applied Materials & Interfaces,      [PMID:40254790] [10.1021/acsami.5c05451]
15. Min Zhou, Ningbo Yu, Qiang Sun, Hongxia Gao, Jinhang Fan, Zhiwu Liang.  (2025)  Combined experimental and computational study on elucidating steric effects in amine-based CO2 capture.  CHEMICAL ENGINEERING SCIENCE,      [PMID:] [10.1016/j.ces.2025.122015]
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17. Xiangxin Meng, Die Hu, Qing Sun, Bo Shen, Shaocong Duan, Gang Liu, Bonan Kang, S. Ravi P. Silva.  (2025)  Preburied Engineering Achieving High-Performance Flexible MAPbI3 Perovskite Solar Cells.  ACS Sustainable Chemistry & Engineering,      [PMID:] [10.1021/acssuschemeng.5c10690]
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